Improving Oenococcus oeni to overcome challenges of wine malolactic fermentation.

Alice Betteridge, Paul Grbin, Vladimir Jiranek

Journal: Trends in biotechnology 2016;33(9):547-53

PMID: 26197706

Abstract

Oenococcus oeni is crucial for winemaking, bringing stabilization, deacidification, and sensory impacts through malolactic fermentation (MLF) to most wine styles. The poor nutritional make-up of wine together with typically low processing temperatures and pH and high ethanol content and sulfur dioxide (SO2) hinder O. oeni growth and activity. Production delays and interventions with starter cultures and nutritional supplements have significant cost and quality implications; thus, optimization of O. oeni has long been a priority. A range of optimization strategies, some guided by detailed characterization of O. oeni, have been exploited. Varying degrees of success have been seen with classical strain selection, mutagenesis, gene recombination, genome shuffling, and, most recently, directed evolution (DE). The merits, limitations, and future prospects of each are discussed.

Copyright © 2015 Elsevier Ltd. All rights reserved.

Address: School of Agriculture, Food, and Wine, The University of Adelaide, PMB 1 Glen Osmond, SA 5064, Australia.; School of Agriculture, Food, and Wine, The University of Adelaide, PMB 1 Glen Osmond, SA 5064, Australia. Electronic address: [email protected].
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